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Kinetic Modeling Study of the Industrial Sulfur Recovery Process for Operating Condition Optimization

机译:操作条件优化工业硫恢复过程的动力学建模研究

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Sulfur recovery from acid gas (H2S and CO2), which is contained in fresh natural gas, can bring many economic and environmental benefits, and this topic has been studied for years. Finding an optimal operating condition for the factory is of much importance. In this paper, we built a reactor network analysis model with a detailed mechanism to describe and calculate the process in the sulfur recovery unit. This detailed mechanism included 94 species and 615 elementary reactions. Our model has a more accurate residence time than other existing models. This simulation model was verified with industrial data, and the calculation result was highly consistent with the industrial data and more accurate than other approaches. Then, we used this reactor network analysis model to study the effect of the excess air coefficient, the thermal reactor temperature, and the temperature of cooling water on the sulfur recovery efficiency of a real device in the Puguang gas field. The result showed the excess air coefficient and thermal reactor temperature had a clear impact on sulfur recovery efficiency. After analysis, we got the optimum condition parameters for this device. At last, these parameters were tested in the real sulfur recovery device, and the result was reasonable. Our research provides a way to improve the sulfur recovery process in the industry, and it can be helpful to reduce pollution emissions and improve economic performance.
机译:从酸性气体(H2S和CO2)中含有含有新鲜天然气的硫回收,可带来许多经济和环境效益,并且已经研究了这一主题。寻找工厂的最佳运行条件非常重要。在本文中,我们建立了一种反应堆网络分析模型,具有详细的机制来描述和计算硫回收单元中的过程。该详细机制包括94种和615个基本反应。我们的模型具有比其他现有型号更准确的停留时间。使用工业数据验证了该仿真模型,计算结果与工业数据高度一致,比其他方法更准确。然后,我们使用该反应堆网络分析模型来研究过量的空气系数,热反应器温度和冷却水温度对Puguang气田中真实装置的硫回收效率的影响。结果表明,过量的空气系数和热反应器温度对硫回收效率显着影响。分析后,我们为此设备获得了最佳条件参数。最后,在真正的硫磺回收装置中测试了这些参数,结果是合理的。我们的研究提供了一种改善行业中硫恢复过程的方法,可以减少污染排放和提高经济绩效有助于。

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